Literature DB >> 22203676

Amidoxime reductase system containing cytochrome b5 type B (CYB5B) and MOSC2 is of importance for lipid synthesis in adipocyte mitochondria.

Etienne P A Neve1, Asa Nordling, Tommy B Andersson, Ulf Hellman, Ulf Diczfalusy, Inger Johansson, Magnus Ingelman-Sundberg.   

Abstract

Reduction of hydroxylamines and amidoximes is important for drug activation and detoxification of aromatic and heterocyclic amines. Such a reductase system was previously found to be of high activity in adipose tissue and liver, and furthermore, in vitro studies using recombinant truncated and purified enzymes suggested the participation of cytochrome b(5) reductase (CYB5R), cytochrome b(5) (CYB5), and molybdenum cofactor sulfurase C-terminal containing 1 and 2 (MOSC1 and -2). Here, we show that purified rat liver outer mitochondrial membrane contains high amidoxime reductase activity and that MOSC2 is exclusively localized to these membranes. Moreover, using the same membrane fraction, we could show direct binding of a radiolabeled benzamidoxime substrate to MOSC2. Following differentiation of murine 3T3-L1 cells into mature adipocytes, the MOSC2 levels as well as the amidoxime reductase activity were increased, indicating that the enzyme is highly regulated under lipogenic conditions. siRNA-mediated down-regulation of MOSC2 and the mitochondrial form of cytochrome b(5) type B (CYB5B) significantly inhibited the reductase activity in the differentiated adipocytes, whereas down-regulation of MOSC1, cytochrome b(5) type A (CYB5A), CYB5R1, CYB5R2, or CYB5R3 had no effect. Down-regulation of MOSC2 caused impaired lipid synthesis. These results demonstrate for the first time the direct involvement of MOSC2 and CYB5B in the amidoxime reductase activity in an intact cell system. We postulate the presence of a novel reductive enzyme system of importance for lipid synthesis that is exclusively localized to the outer mitochondrial membrane and is composed of CYB5B, MOSC2, and a third unknown component (a CYB5B reductase).

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Year:  2011        PMID: 22203676      PMCID: PMC3307252          DOI: 10.1074/jbc.M111.328237

Source DB:  PubMed          Journal:  J Biol Chem        ISSN: 0021-9258            Impact factor:   5.157


  40 in total

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6.  Properties of a NADH-dependent N-hydroxy amine reductase isolated from pig liver microsomes.

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  20 in total

1.  Mitochondrial amidoxime-reducing component 2 (MARC2) has a significant role in N-reductive activity and energy metabolism.

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Journal:  J Biol Chem       Date:  2019-09-25       Impact factor: 5.157

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Review 4.  The mammalian molybdenum enzymes of mARC.

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5.  The pivotal role of the mitochondrial amidoxime reducing component 2 in protecting human cells against apoptotic effects of the base analog N6-hydroxylaminopurine.

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Review 7.  Electron Transfer Pathways in Cholesterol Synthesis.

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10.  The involvement of mitochondrial amidoxime reducing components 1 and 2 and mitochondrial cytochrome b5 in N-reductive metabolism in human cells.

Authors:  Birte Plitzko; Gudrun Ott; Debora Reichmann; Colin J Henderson; C Roland Wolf; Ralf Mendel; Florian Bittner; Bernd Clement; Antje Havemeyer
Journal:  J Biol Chem       Date:  2013-05-23       Impact factor: 5.157

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